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Updated: Feb 12, 2026

In Ovo Xenografting of Patient-Derived Acute Lymphoblastic Leukemia (ALL) Cells (PDX-ALL)
Published on: August 1, 2025
Histone deacetylase 6 controls Notch3 trafficking and degradation in T-cell acute lymphoblastic leukemia cells
Marica Pinazza1, Margherita Ghisi2,3, Sonia Minuzzo2
1Istituto Oncologico Veneto IOV-IRCCS, Padova, Italy.
Abstract:
Several studies have revealed that endosomal sorting controls the steady-state levels of Notch at the cell surface in normal cells and prevents its inappropriate activation in the absence of ligands. However, whether this highly dynamic physiologic process can be exploited to counteract dysregulated Notch signaling in cancer cells remains unknown. T-ALL is a malignancy characterized by aberrant Notch signaling, sustained by activating mutations in Notch1 as well as overexpression of Notch3, a Notch paralog physiologically subjected to lysosome-dependent degradation in human cancer cells. Here we show that treatment with the pan-HDAC inhibitor Trichostatin A (TSA) strongly decreases Notch3 full-length protein levels in T-ALL cell lines and primary human T-ALL cells xenografted in mice without substantially reducing NOTCH3 mRNA levels. Moreover, TSA markedly reduced the levels of Notch target genes, including pTα, CR2, and DTX-1, and induced apoptosis of T-ALL cells. We further observed that Notch3 was post-translationally regulated following TSA treatment, with reduced Notch3 surface levels and increased accumulation of Notch3 protein in the lysosomal compartment. Surface Notch3 levels were rescued by inhibition of dynein with ciliobrevin D. Pharmacologic studies with HDAC1, 6, and 8-specific inhibitors disclosed that these effects were largely due to inhibition of HDAC6 in T-ALL cells. HDAC6 silencing by specific shRNA was followed by reduced Notch3 expression and increased apoptosis of T-ALL cells. Finally, HDAC6 silencing impaired leukemia outgrowth in mice, associated with reduction of Notch3 full-length protein in vivo. These results connect HDAC6 activity to regulation of total and surface Notch3 levels and suggest HDAC6 as a potential novel therapeutic target to lower Notch signaling in T-ALL and other Notch3-addicted tumors.
Insights
The pan-HDAC inhibitor Trichostatin A (TSA) reduces Notch3 protein levels in T-ALL cells by promoting lysosomal degradation, suggesting HDAC6 as a therapeutic target for T-ALL.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Endosomal sorting regulates cell surface Notch levels and prevents aberrant signaling in normal cells.
- Dysregulated Notch signaling, driven by Notch1 mutations and Notch3 overexpression, characterizes T-cell acute lymphoblastic leukemia (T-ALL).
- The therapeutic potential of targeting Notch signaling via endosomal sorting in cancer remains unexplored.
Purpose of the Study:
- To investigate whether targeting endosomal sorting can counteract dysregulated Notch signaling in T-ALL.
- To identify the specific role of histone deacetylase 6 (HDAC6) in regulating Notch3 protein levels and T-ALL progression.
Main Methods:
- Treatment of T-ALL cell lines and xenografts with Trichostatin A (TSA), a pan-HDAC inhibitor.
- Analysis of Notch3 protein and mRNA levels, Notch target gene expression, and apoptosis.
- Investigation of Notch3 localization (cell surface vs. lysosomal compartment) and rescue experiments using dynein inhibition.
- Pharmacological inhibition and shRNA-mediated silencing of specific HDAC isoforms, particularly HDAC6.
Main Results:
- TSA treatment significantly decreased full-length Notch3 protein levels in T-ALL cells without affecting NOTCH3 mRNA.
- TSA reduced Notch target gene expression, induced T-ALL cell apoptosis, and promoted Notch3 lysosomal accumulation.
- HDAC6 inhibition, specifically, was responsible for the observed reduction in Notch3 levels and subsequent apoptosis.
- HDAC6 silencing impaired leukemia outgrowth in mice, correlating with reduced Notch3 protein in vivo.
Conclusions:
- HDAC6 activity is critical for maintaining total and cell surface Notch3 levels in T-ALL.
- Targeting HDAC6 offers a potential therapeutic strategy to reduce Notch signaling in T-ALL.
- HDAC6 represents a novel therapeutic target for T-ALL and other Notch3-dependent malignancies.
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